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Biomedical subjects

Y Kimata

Publications and source records attributed to Y Kimata.

47 records · Page 3Linked to original sources

Elongation factor 2 mutants deficient in diphthamide formation show temperature-sensitive cell growth.

Protein synthesis elongation factor 2 (EF-2) from eukaryotes contains an unusual modified histidine residue, termed diphthamide. Diphthamide has been shown to be a site of ADP-ribosylation by bacterial toxins, but its function remains obscure. We expressed mutant genes of EF-2 with substitutions of 19 other amino acids for His-699, which is modified to diphthamide, in yeast cells and found that they can be classified into three groups. In the first group (Group 1), replacement of His-699 by the basic amino acid Arg or Lys showed not only loss of EF-2 activity but also inhibitory effects on the growth of cells co-expressing wild-type EF-2. In the second group (Group 2), replacement with Gly, Pro, Ser, or Asp resulted in nonfunctional EF-2, but it did not affect the growth of cells co-expressing wild-type EF-2. In the third group (Group 3), replacement by one of the other 13 amino acids resulted in a functional EF-2. In the Group 3 mutants, EF-2 was not ribosylated by diphtheria toxin, indicating that the mutant EF-2s did not form diphthamide. However, the viable cells grew more slowly than cells expressing wild-type EF-2 and showed temperature sensitivities. This result suggests that diphthamide may confer heat resistance on EF-2, although it still may be active without diphthamide at a normal temperature.

Amino Acids↗

Posttranscriptional regulation of ferritin during nodule development in soybean.

During soybean (Glycine max) nodule development, induced ferritin mRNA concentration remains elevated while the protein concentration decreases 4- to 5-fold (M. Ragland and E.C. Theil [1993] Plant Mol Biol 21: 555-560). Investigation of posttranscriptional regulation of nodule ferritin during development showed that ferritin mRNA was efficiently translated based on polyribosome size in vivo, protein synthesis (0.8% of total protein) in vitro, and protein synthesis in intact nodules. Ferritin, a plastid protein, was processed in both immature and mature nodules. In chimeric mRNA, soybean ferritin mRNA sequences blocked the function of the iron regulatory element (IRE), the cis regulatory element of animal ferritin mRNA; the IRE regulates chimeric animal mRNAs. The absence of translational regulation of ferritin in plants contrasts with ferritin regulation in animals. Thus, ferritin regulation has diverged during evolution, whereas structure of the mature protein has been conserved. Ferritin in mature soybean nodules is apparently regulated after translation, possibly in analogy with such plastid proteins as chlorophyll-binding proteins D1, CP43, LHCI, and LHCII, the small subunit of ribulose-bisphosphate carboxylase, and apoplastocyanin. An autocatalytic mechanism observed in vivo for degradation of plastid protein D1 and in vitro for pea ferritin during iron release could explain the ferritin decreases in mature nodules.

Animals↗

Expression of non-ADP-ribosylatable, diphtheria toxin-resistant elongation factor 2 in Saccharomyces cerevisiae.

Eucaryotic elongation factor 2 (EF-2) contains a post-translationally modified histidine residue termed diphthamide that is specifically ADP-ribosylated by diphtheria toxin (DT) or Pseudomonas exotoxin A. To analyze the potential physiological role of ADP-ribosylation of EF-2 by cellular ADP-ribosyl transferase, we constructed DT-resistant, non-ADP-ribosylatable Saccharomyces cerevisiae EF-2 by site-directed mutagenesis and expressed the mutant EF-2 in yeast. Substitution of Arg for Gly(701) in yeast EF-2 conferred complete resistance to DT in vivo and in vitro. However, when only non-ribosylatable EF-2 was expressed in cells using genetic manipulation, the mutated EF-2 did not affect vegetative cell growth, mating, sporulation and germination of ascospores.

Adenosine Diphosphate Ribose↗

The iron regulatory region of ferritin mRNA is also a positive control element for iron-independent translation.

The iron regulatory element (IRE) in the 5'-untranslated region of ferritin mRNA interacts with a specific regulator protein (P-90, IRE-BP, or FRP) to block translation. High cellular iron changes the IRE/P-90 interaction to relax the translational block and allow polyribosome formation. We now show that the IRE and base-paired flanking regions also enhance translation in the absence of P-90, explaining the high translational efficiency of deregulated ferritin mRNA observed previously. The effect of the IRE on translational efficiency was examined by comparing four sets of mRNAs: (1) +/- IRE in animal (frog) ferritin, regulated translationally by iron in vivo; (2) +/- animal IRE fused with plant (soybean) ferritin, regulated transcriptionally by iron in vivo; (3) repositioned IRE in animal ferritin; (4) mutated IRE in animal ferritin with G16A substitution, which decreases P-90 binding (negative control). The IRE region increased translational efficiency of both the animal ferritin and the heterologous IRE/soybean ferritin fusion mRNAs; the effect was observed in cell-free translation systems from either plants (wheat germ) or animals (rabbit reticulocyte). Repositioning the IRE further from the 5' cap eliminated positive control of translation. The single base mutation had no effect, indicating that positive and negative translational control involves different sections of the IRE region. Thus, the IRE region in ferritin mRNA encodes both positive translational control and, when combined with the regulator protein P-90, negative translational control.

Animals↗

Anti-bovine thyrotropin autoantibodies in patients with Hashimoto's thyroiditis, subacute thyroiditis, and systemic lupus erythematosus.

We report four cases found to have anti-bovine thyrotropin (bTSH) antibodies, two with Hashimoto's thyroiditis and the other two, each with subacute thyroiditis and systemic lupus erythematosus (SLE). The unusually high negative titers of anti-TSH receptor antibodies (Case no. 1, -43.1%; Case no. 2, -34.9%; Case no. 3, -55.2%; Case no. 4, -59.9%) led to the incidental finding of the presence of anti-bovine (bTSH) antibodies in each patient. Case no. 1 was diagnosed to have Hashimoto's thyroiditis and was treated with L-thyroxine (L-T4). With the treatment, serum free T4 (FT4)normalized with a decline in the serum TSH concentration. The other patient diagnosed to have Hashimoto's thyroiditis (Case no. 2) remained euthyroid even without supplemental thyroid hormone therapy and the serum concentrations of FT4 and TSH stayed within the normal range. The third is a case of subacute thyroiditis (Case no. 3) with a typical clinical course of the disease. She had the anti-bTSH antibodies on her first outpatient visit. Serial examination of her sera disclosed the antibody titers to be on the same range over the 28 months after the onset of the symptoms. The fourth is a patient with SLE who had been treated with steroid (alternative day therapy of 40 mg/day prednisolone). Titers of the anti-bTSH antibodies spontaneously declined to the negative level 5 months later. None of the four cases had antibodies against human TSH alpha-subunit of bovine LH and alpha-subunit of bovine FSH.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Serum ferritin concentration in subacute thyroiditis.

Serum concentration of ferritin was measured in 20 patients (19 women, one man) with untreated (thyrotoxic phase) subacute thyroiditis, 32 patients (21 women, 11 men) with untreated Graves' disease, 17 patients (all women) with euthyroid Hashimoto's thyroiditis, 12 patients (all women) with hepatitis A (HAV), eight patients (all women) with pneumonia, and 59 normal controls (30 women, 29 men). In female patients with subacute thyroiditis, the serum concentration of ferritin was 163.6 +/- 116.3 micrograms/L (after log transformation, 2.12 +/- 0.31 micrograms/L, mean +/- SD), which was significantly higher than values in female Graves' disease (P less than .05), Hashimoto's thyroiditis (P less than .001), pneumonia (P less than .05), and healthy subjects (P less than .001), being 97.9 +/- 71.9 micrograms/L (after log transformation, 1.85 +/- 0.42 micrograms/L), 51.6 +/- 53.0 micrograms/L (after log transformation, 1.48 +/- 0.50 micrograms/L), 88.2 +/- 56.3 micrograms/L (after log transformation, 1.86 +/- 0.30 micrograms/L), and 25.2 +/- 7.4 micrograms/L (after log transformation; 1.16 +/- 0.10 micrograms/L), respectively, but was not significantly different with HAV, being 368.3 +/- 514.0 micrograms/L (after log transformation, 2.32 +/- 0.47 micrograms/L). In a male with subacute thyroiditis, the serum concentration of ferritin was 521.8 micrograms/L (after log transformation, 2.72 micrograms/L), which was higher than +/- 3 SD and +/- 1 SD of the levels in healthy males (93.0 +/- 55.9 micrograms/L; after log transformation, 1.89 +/- 0.27 micrograms/L) and male Graves' disease patients (257.0 +/- 195.5 micrograms/L; after log transformation, 2.28 +/- 0.38 micrograms/L), respectively. Elevated serum ferritin concentration significantly declined with treatment by either aspirin or prednisolone (paired t test, P less than .001).(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

Synthesis and examination of antigenicity of four hormonogenic sites and two non-hormonogenic sites of human thyroglobulin.

Four peptides (HTg-1, 1-10; HTg-2, 2547-2558; HTg-4, 2592-2603; HTg-6, 2737-2748) which contain hormonogenic acceptor tyrosine (Tyr) residues and two control peptides (HTg-3, 2582-2591; HTg-5, 2687-2694) of human thyroglobulin (Tg) were synthesized, radioiodinated and their binding with serial anti-human Tg antisera which had been raised in two rabbits (TG-1, TG-2) tested. Although increased binding of each of the six peptides was observed, HTg-4 and HTg-2 had higher binding whereas HTg-1 and HTg-6 showed lower binding with the immune gamma globulin from both rabbits. Each of the six peptides was iodinated with inorganic iodine (127I) using the chloramine-T method and the inhibitory activity of each peptide on the interaction between 125I-T4 and anti-Tg antibodies was tested. At the same time, Tg obtained from a normal thyroid tissue (NTg, iodine content 0.38%) and from a Hürthle cell adenoma (CTg, iodine content 0.000%) were also tested for inhibition of 125I-T4 binding. 125I-T4 binding with rabbit anti-Tg antisera was displaced not only by NTg and CTg but also by three out of four hormonogenic peptides. Among the three peptides, HTg-2 had the highest inhibitory activity, inhibiting 125I-T4 binding to the extent of 21.5% (TG-1) and 16.0% (TG-2). Two control peptides (HTg-3, HTg-5) did not inhibit 125I-T4 binding with anti-Tg antibodies.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Molecular cloning and differential expression of the maize ferredoxin gene family.

In maize (Zea mays L.), four ferredoxin (Fd) isoproteins, Fd I to Fd IV, are differentially distributed in photosynthetic and nonphotosynthetic organs of young seedlings (Y Kimata, T Hase [1989] Plant Physiol 89: 1193-1197). To understand structural characteristics of the Fd isoproteins and molecular mechanism of the differential expression of their genes, we have cloned and characterized three different maize Fd cDNAs. DNA sequence analyses showed that two of the cDNAs encoded the entire precursor polypeptides of Fd I and Fd III, which were composed of 150 and 152 amino acid residues, respectively, and the other encoded a 135 amino acid precursor polypeptide of Fd not yet identified. High degrees of homologies were found in the deduced amino acid sequences of mature regions of these Fd isoproteins, but the transit peptide of Fd III differed considerably from those of other Fd isoproteins. Fd I and the unidentified Fd were encoded mainly with codons ending in C or G, but such strong codon bias was not seen in Fd III. Gene specific probes for each cDNA were used to probe Northern blots of RNA isolated from leaves, mesocotyls, and roots of maize seedlings. The gene transcripts for Fd I and the unidentified Fd were restricted to leaves and their levels increased markedly upon illumination of etiolated seedlings, whereas that for Fd III was detected in all organs and its accumulation was not light dependent. This organ specific accumulation of Fd mRNAs corresponds exactly to the distribution pattern of Fd isoproteins.

Journal Article↗

Localization of ferredoxin isoproteins in mesophyll and bundle sheath cells in maize leaf.

Four ferredoxin isoproteins were identified in the C(4) plant Zea mays L. by analysis of extracts from leaves, mesocotyls, and roots of the young seedlings. The relative amounts of the isoproteins isolated from the photosynthetic and nonphotosynthetic organs were different. All the isoproteins were present in the leaves of green and etiolated plants, whereas two out of the four isoproteins were not detected in the roots or in the mesocotyls. During the greening of etiolated seedlings, the level of the two isoproteins unique to the leaf increased markedly. Analysis of the cellular and subcellular distribution of the two major leaf isoproteins showed that one isoprotein was present in the chloroplasts of both mesophyll and bundle sheath cells, whereas the other was only found in the chloroplasts of bundle sheath cells. This is the first report of the cell-specific expression of ferredoxin isoproteins in the leaves of a C(4) plant.

Journal Article↗

[Evaluation of left ventricular asynergy by two-dimensional echocardiography: comparison between fixed external axis system and floating axis system].

Detection and quantitative estimation of segmental asynergy in the infarcted area has been impeded by the rotation and anterior movement of the heart during systole. In the present communication, we compared the two measurements determined by the floating and fixed external axis systems. The former takes into account of the effect of cardiac movement. Furthermore, we assessed which system is superior by the left ventriculographic and coronary arteriographic analyses. The materials consisted of 24 cases of myocardial infarction. There was no significant difference between the two systems in the estimation of the number of asynergic segments or between echocardiographic and ventriculographic findings. The floating axis system had a tendency to underestimate asynergy, so that the number of hypokinetic segment estimated by the floating system was greater than that by the fixed external axis system. Therefore, the fixed external axis system was superior to the floating axis system in determining the causative coronary artery.

Adult↗